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拟南芥染色质重塑因子DEK3与组蛋白和DNA相互作用的特性研究

Characterization of the Arabidopsis thaliana chromatin remodeler DEK3 for its interaction with histones and DNA.

作者信息

Sundaram Rajivgandhi, Gandhi Surajit, Jonak Claudia, Vasudevan Dileep

机构信息

Institute of Life Sciences, Bhubaneswar, 751023, India; Manipal Academy of Higher Education, Manipal, 576104, India.

Institute of Life Sciences, Bhubaneswar, 751023, India; Regional Centre for Biotechnology, Faridabad, 121001, India.

出版信息

Biochimie. 2024 Dec;227(Pt A):248-261. doi: 10.1016/j.biochi.2024.07.018. Epub 2024 Aug 6.

DOI:10.1016/j.biochi.2024.07.018
PMID:39097158
Abstract

Chromatin structure and dynamics regulate all DNA-templated processes, such as transcription, replication, and repair. Chromatin binding factors, chromatin architectural proteins, and nucleosome remodelers modulate chromatin structure and dynamics and, thereby, the various DNA-dependent processes. Arabidopsis thaliana DEK3, a member of the evolutionarily conserved DEK domain-containing chromatin architectural proteins, is an important factor for chromatin structure and function, involved in transcriptional programming to regulate flowering time and abiotic stress tolerance. AtDEK3 contains an uncharacterized N-terminal domain, a middle SAF domain (winged helix-like domain), and a C-terminal DEK domain, but their role in the interaction of AtDEK3 with histones and DNA remained poorly understood. Using biochemical and biophysical analyses, we provide a comprehensive in vitro characterization of the different AtDEK3 domains for their interaction with histone H3/H4 and DNA. AtDEK3 directly interacts with histone H3/H4 tetramers through its N-terminal domain and the C-terminal DEK domain in a 1:1 stoichiometry. Upon interaction with H3/H4, the unstructured N-terminal domain of AtDEK3 undergoes a conformational change and adopts an alpha-helical conformation. In addition, the in-solution envelope structures of the AtDEK3 domains and their complex with H3/H4 have been characterized. The SAF and DEK domains associate with double-stranded and four-way junction DNA. As DEK3 possesses a histone-interacting domain at the N- and the C-terminus and a DNA-binding domain in the middle and at the C-terminus, the protein might play a complex role as a chromatin remodeler.

摘要

染色质结构和动力学调控所有以DNA为模板的过程,如转录、复制和修复。染色质结合因子、染色质结构蛋白和核小体重塑因子调节染色质结构和动力学,进而调控各种依赖DNA的过程。拟南芥DEK3是进化上保守的含DEK结构域的染色质结构蛋白家族成员,是染色质结构和功能的重要因子,参与转录编程以调控开花时间和非生物胁迫耐受性。AtDEK3包含一个功能未知的N端结构域、一个中间的SAF结构域(类翼状螺旋结构域)和一个C端DEK结构域,但它们在AtDEK3与组蛋白和DNA相互作用中的作用仍知之甚少。通过生化和生物物理分析,我们对AtDEK3不同结构域与组蛋白H3/H4和DNA相互作用进行了全面的体外表征。AtDEK3通过其N端结构域和C端DEK结构域以1:1的化学计量比直接与组蛋白H3/H4四聚体相互作用。与H3/H4相互作用时,AtDEK3的无结构N端结构域发生构象变化并采用α-螺旋构象。此外,还对AtDEK3结构域及其与H3/H4复合物的溶液包封结构进行了表征。SAF和DEK结构域与双链和四向连接DNA结合。由于DEK3在N端和C端具有组蛋白相互作用结构域,在中间和C端具有DNA结合结构域,该蛋白可能作为染色质重塑因子发挥复杂作用。

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